See how a compatibilized PHA-elastomer blend achieves impact strength and elongation without fi
A retractable tape with friction-fit openings secures golf tees of different shaft diameters while allowing flexible spacing and reducing tee loss.
Motion-triggered strobe and speed feedback reveal club face position at impact without making golfers look away from the ball.
A slotted cigar support uses a removable golf tee as a ground spike, keeping cigars off damp grass while staying pocket-friendly.
A rotating wheel with offset cavity exits and a stationary transfer panel creates varied ball paths while keeping sensors off the wheel to avoid interference.
A weighted animal-shaped holder uses grid-arranged tee holes and a hanging eyelet to keep multiple golf tees upright, visible, and harder to lose.
Real-time course conditions and golfer data are combined to recommend the best tee, improving fit, pace, and player comfort.
A necked beverage container doubles as a stable golf tee, reducing bag clutter while supporting a standard golf ball upright.
An elastic height-maintaining member lets the tee adjust easily, absorb tee-shot impact, and hold its set height with less structural complexity.
Redirected airflow through the tee cup lowers ball-tee friction and air resistance, helping improve ball flight speed and spin.
A flexible paper tube uses bonded plies to reduce friction and absorb impact forces, helping limit golf-ball deformation and inconsistent spin.
Negative Poisson’s ratio foam expands laterally under compression, helping racquets transfer impact energy and improving golf tee aerodynamics.
A hollow stem stores ⅛–3 ounces of beverage, while a removable cap supports refilling and golf-ball teeing.
A reinforced skirt and open body with support columns add elasticity and drag, helping prevent breakage, loss, and inconsistent tee height.
A detachable elastic connector restrains tee flight while attaching to a separate weight on natural or artificial turf.
This case combines NPR and PPR materials to balance structural stability, energy transfer, and longer ball launch distance.
Curved launch ramp reduces side spin to correct trajectory deviations from improper swing angles.
An overmolded golf tee combines a rigid stake with a flexible crown to reduce friction during ball impact.
Fiber-reinforced thermoplastic composite construction prevents fracture while ground-gripping rings anchor the tee against wind displacement.
A lightweight golf swing plane training aid stabilizes on a surface using a club insert member, resolving the trade-off between portability and stability.
Longitudinal ribs on the tee shaft increase friction to prevent displacement when struck, reducing recovery distance.
An inclined golf tee uses spaced rim bulges to create point contact with the ball.
An electromagnet array levitates a golf ball to a selected height, eliminating manual tee adjustments that cause physical strain and equipment damage.
A golf tee uses a PTFE coating on its ball support to reduce frictional interaction during impact.
Segmented head geometry resolves the trade-off between ball stability and maintenance efficiency, allowing the tee to fill divots and clean club grooves.
Pivoting feet unfold from a carrying box to create a stable putting goal, resolving portability versus stability trade-offs.
Encapsulated spark material in a golf tee generates visual feedback upon club impact, correcting head position errors during the swing.
Angled rails and a rear support point on the tee head minimize club face interference for improved launch performance.
A golf swing mat system uses removable guide and barrier elements to provide immediate tactile feedback on club head movement.
Adjustable angled poles on a U-shaped base guide swing paths through the impact zone, resolving club-specific angle-of-attack contradictions.
A reusable golf tee practice device featuring a reversible arm and locking system for continuous use.
Segmented playing surfaces and parameter-changed clubs resolve space and cost constraints in recreational golf.
Protrusion receiving groove coupling enables self-alignment after impact rotation, eliminating magnets and bolts to reduce manufacturing costs.
A height-adjustable golf tee screws into a multi-piece threaded anchor for precise ball positioning.
Segmented support members extend downwardly from a golf bag base to engage cart seats, resolving stability versus base size conflicts.
Rebounder panel deflects golf balls to indicate swing accuracy and spin direction through physical ricochet.
Segmented tee shaft and weighted base resolve complexity trade-offs, providing adjustable height settings and secure anchoring for indoor launch monitor use.
An asymmetric golf tee design reduces frictional forces by orienting reduced contact areas along the impact path, improving ball trajectory accuracy.
A golf tee features a modified concave upper surface that supports the ball within a cap-shaped recess to minimize contact area and friction.
A rotating golf tee assembly uses a motorized arm system to spin multiple targets at varying speeds for dynamic practice.
Mechanical guide pins in an arcuate channel provide visual feedback for putting strokes, eliminating complex electronics while maintaining training precision.
Gelatin and crustacean shell create a tough golf ball that decomposes in water, resolving the trade-off between mechanical strength and environmental harm.
Geotextile filtration separates native soil from the drainage system, preventing clogging while maintaining continuous water permeability.
Segmented golf tee design allows the upper section to detach from the lower anchor, eliminating ground resistance transfer to the clubface during swings.
A mesh golf tee cup flexes upon club impact to minimize energy absorption and maintain ball trajectory.
A golf tee combines a rigid polymer stake with a flexible elastomer crown to reduce friction at impact.
A golf tee features a ground-gripping ring and terminal grounding tool for secure placement.